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Flow Cytometric Assessment of Erythrocyte Shape through Analysis of FSC Histograms: Use of Kurtosis and Implications for Longitudinal Evaluation

机译:红细胞形状的流式细胞仪评估通过FsC直方图分析:利用峰度和纵向评价的启示

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摘要

Sphericity of erythrocytes can be estimated from analysis of FSC signal distribution in flow cytometry. Previously, Pearson’s coefficient of dissymmetry (PCD) and spherical index (SphI) were applied to determine erythrocyte sphericity from the FSC histogram. The aim of the present study is to illustrate the application of kurtosis as an indicator of erythrocyte sphericity in flow cytometry in a broad range of FSC distributions. Moreover, the possibility of longitudinal evaluation of erythrocyte sphericity is studied. Change of erythrocyte sphericity of 10 healthy subjects was induced by variation of buffer osmolarity to validate applicability of sphericity measures. Agreement between the sphericity indicators was then studied in samples from 20 healthy donors taken at three time points, which were processed through density gradient centrifugation and incubated with FITC-labelled antibodies to induce a broad variation of erythrocyte form (1086 samples). SphI, PCD and kurtosis of FSC distribution were calculated. Correlation of the respective measures, standard error of measurement (SEM) and r ratio (intra- to interindividual variance) were determined to illustrate agreement between the sphericity indicators. In the first study part, all sphericity indicators illustrated change of erythrocyte shape as induced by osmolarity variation. In the second part, correlation between kurtosis and SphI was −0.97 and correlation between kurtosis and PCD was 0.58 (p<0.05). In isotype control samples, correlation between kurtosis and SphI was −0.98 and correlation between kurtosis and PCD was 0.48 (p<0.05). In these samples, mean kurtosis was −0.80 (SEM 0.03), mean SphI was 2.19 (SEM 0.04) and mean PCD was −0.31 (SEM 0.02). r ratios of all measures of sphericity were <0.6. Our results show that kurtosis is closely correlated with SphI in a broad range of erythrocyte FSC distributions. Moreover, all measures of sphericity feature r ratios <0.6, highlighting that erythrocyte sphericity appears as a feasible parameter for individual longitudinal data monitoring.
机译:可以通过流式细胞仪中FSC信号分布的分析来估计红细胞的球形度。以前,皮尔逊的不对称系数(PCD)和球面指数(SphI)用于从FSC直方图中确定红细胞的球形度。本研究的目的是说明峰度在广泛的FSC分布范围内作为流式细胞仪中红细胞球形度指标的应用。此外,研究了纵向评估红细胞球形度的可能性。通过改变缓冲液克分子渗透压浓度来诱导10名健康受试者的红细胞球形度变化,以验证球形度测量方法的适用性。然后研究了在三个时间点取自20个健康供体的样品中的球形度指标之间的一致性,这些样品通过密度梯度离心进行处理,并与FITC标记的抗体一起孵育以诱导红细胞形态的广泛变化(1086个样品)。计算了SphI,PCD和FSC分布的峰度。确定了各个度量的相关性,度量的标准误差(SEM)和r比率(个体间差异),以说明球形度指标之间的一致性。在第一部分的研究中,所有球形度指标都说明了由渗透压变化引起的红细胞形状的变化。在第二部分中,峰度与SphI之间的相关性为-0.97,而峰度与PCD之间的相关性为0.58(p <0.05)。在同型对照样品中,峰度与SphI之间的相关性为-0.98,而峰度与PCD之间的相关性为0.48(p <0.05)。在这些样品中,平均峰度为-0.80(SEM 0.03),平均SphI为2.19(SEM 0.04),平均PCD为-0.31(SEM 0.02)。所有球形度的r比率均<0.6。我们的结果表明,在广泛的红细胞FSC分布中,峰度与SphI密切相关。此外,球形度的所有度量特征r比率均<0.6,突出表明红细胞球形度似乎是单个纵向数据监测的可行参数。

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